AI Article Synopsis

  • Translation control plays a key role in how plants respond to environmental changes, highlighting the need to understand the gap between mRNA levels and their corresponding protein products.
  • This review aims to outline experimental methods for studying differential translation in plants, summarize computational tools for assessing mRNA features related to translation efficiency, and verify these findings through experimentation.
  • Additionally, it discusses future opportunities to identify specific structural characteristics of plant mRNAs that regulate differential translation through a combination of computational and experimental strategies.

Article Abstract

The control of translation in the course of gene expression regulation plays a crucial role in plants' cellular events and, particularly, in responses to environmental factors. The paradox of the great variance between levels of mRNAs and their protein products in eukaryotic cells, including plants, requires thorough investigation of the regulatory mechanisms of translation. A wide and amazingly complex network of mechanisms decoding the plant genome into proteome challenges researchers to design new methods for genome-wide analysis of translational control, develop computational algorithms detecting regulatory mRNA contexts, and to establish rules underlying differential translation. The aims of this review are to (i) describe the experimental approaches for investigation of differential translation in plants on a genome-wide scale; (ii) summarize the current data on computational algorithms for detection of specific structure⁻function features and key determinants in plant mRNAs and their correlation with translation efficiency; (iii) highlight the methods for experimental verification of existed and theoretically predicted features within plant mRNAs important for their differential translation; and finally (iv) to discuss the perspectives of discovering the specific structural features of plant mRNA that mediate differential translation control by the combination of computational and experimental approaches.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6337405PMC
http://dx.doi.org/10.3390/ijms20010033DOI Listing

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